Speed control of synchronous machine by changing duty cycle of DC/DC buck converter

Size: px
Start display at page:

Download "Speed control of synchronous machine by changing duty cycle of DC/DC buck converter"

Transcription

1 AIMS Energy, 3(4): DOI: /energy Received date 11 May 215, Accepted date 1 November 215, Published date 5 November 215 Research article Speed control of synchronous machine by changing duty cycle of DC/DC buck converter Rashid Al Badwawi 1, *, Mohammad Abusara 2, and Tapas Mallick Environment and Sustainability Institute, University of Eeter, Penryn Campus, TR1 9FE, United Kingdom College of Engineering, Mathematics and Physical Sciences, University of Eeter, Penryn Campus, Penryn, Cornwall, TR1 9EZ, United Kingdom * Correspondence: rsma22@eeter.ac.uk; Tel: +44() Abstract: Renewable energies such as wind or solar energy are naturally intermittent and can create technical challenges to interconnected grid in particular with high integration amounts. In addition, if wind or solar is used to supply power to a stand-alone system, continuous power supply will be met only if sufficient energy storage system is available. The global penetration of renewable energy in power systems is increasing rapidly especially wind and solar photovoltaic (PV) systems. Hybrid wind and solar PV generation system becomes very attractive solution in particular for stand-alone applications. It can provide better reliability since the weakness of one system could be complemented by the strength of the other one. When wind energy is integrated into grid, maimum power point tracking control could be used to optimize the output of wind turbine. In variable speed wind turbine, the turbine speed is varied according to the wind speed. This paper presents a comparison between two methods of controlling the speed of a wind turbine in a microgrid namely; Proportional-Integral (PI) control of the tip speed ratio and stored power curve. The PI method provides more controllability, but it requires an anemometer to measure the wind speed. The stored power curve method, however, is easier to implement, but the amount of energy etracted can be less. The system has been modelled using Matlab/Simulink. Keywords: wind energy; wind turbine; tip speed ratio; stored power curve; buck converter

2 Introduction Solar Photovoltaic (PV) and wind energies are intermittent and unpredictable in nature. Therefore, proper scheduling and forecasting tools are required to improve system reliability. Furthermore, combining the two technologies together can improve the availability of the overall system because one energy source can complement the other. During sunny and windy days/hours, power is generated from solar PV and wind turbines. Energy storage systems such as batteries can play a great role in supporting power supply as they can act as balancing devices that provide power (discharging) when there is an energy deficiency and store ecess energy (charging) when there is surplus power from renewable energy sources. Hence, hybrid solar PV and wind power system along with batteries can minimize the effect of intermittency and provide continuous power to the load and/or grid. This hybrid system becomes a good solution for power when the infrastructure facilities such as overhead lines, gas lines, etc. are far away from loads or they are epensive and/or difficult to construct. This also has become a very attractive solution for stand-alone systems. Figure 1 shows a hybrid solar PV and wind system along with battery bank. The common DC bus is connected to the grid via a DC/AC converter. The system can work in either grid-connected mode or stand-alone mode. The DC output voltages from individual solar PV and wind stream, through individual DC/DC and AC/DC-DC/DC units, are integrated and combined in parallel to provide power to the grid/load even with only one source available without the need to work with constant frequency. The different generating sources are not required to be synchronized with the grid which will simplify the operation of the overall system in particular when changing from one mode of operation to the other. The common DC bus voltage is set to be fied and the output current from each source is controlled independently through individual converters. In grid-connected mode of operation, the renewable energy sources act as current sources that inject power directly into the DC bus. The battery bank interfaced by a bi-directional converter and can be charged or discharged depending on the situation of the generation, load and its state of charge. The common DC/AC inverter regulates the DC voltage by injecting/absorbing power to/from the grid. In stand-alone mode of operation, the renewable energy sources still act as current sources feeding directly the load while the battery converter regulates the DC bus by charging (in case of etra power) or discharging the battery (in case of shortage of power). Hence, the battery system acts as a voltage source. In grid-connected mode, the output power from individual renewable energy sources is etracted using a maimum power point tracking (MPPT) technique. The same thing is applicable in the stand-alone mode provided that the battery bank eists as a voltage source to control the DC bus voltage by charging or discharging depending on the status of generation and load requirement. Various papers have been reported and published for control of wind power system or hybrid wind and solar photovoltaic (PV) power systems [1 8]. This paper focuses on the modelling and control design of the wind energy systems. The paper presents a comparison between two methods of controlling a wind turbine in a microgrid namely, PI control of the tip speed ratio and stored power curve. The paper will provide brief information about the wind energy system along with modelling and the two methods of speed control. Simulation results from simplified and detailed models will be presented.

3 73 Supervisory Controller Grid Load Figure 1. Hybrid system with AC microgrid. 2. Materials and Method The wind energy system that is considered in this paper is shown in Figure 2. It consists of a wind turbine, a permanent magnet synchronous machine (PMSM), a rectifier and a DC/DC buck converter. The power output is controlled by regulating the buck output current I L injected into the common DC bus. The controller system consists of two loops. The inner loop controls the buck inductor control by varying the duty ratio of the buck power switch. The outer loop controls the speed of the wind turbine by varying the current demand I L * of the inner loop. Figure 2. Wind energy system.

4 Wind turbine modelling The wind turbine output mechanical power can be epressed by the following equation: 1 2 (1) where : turbine mechanical power : air density : turbine rotor radius : wind speed : turbine performance coefficient (rotor efficiency) The performance coefficient C p is a function of the tip speed ratio and the pitch angle in a pitch controlled system. The wind turbine considered in this paper has a fied blade pitch angle. The tip speed ratio (TSR) is given by the following equation: (2) where is the turbine rotational speed. The relationship between C p and is non-linear. For the turbine considered in this paper, this relationship is shown in Figure 3. This curve has been produced eperimentally by testing the wind turbine under variable wind speed. It can be noticed that the maimum output power for the considered turbine is obtained when λ = 1.3. The turbine rotational speed is given by: where : turbine mechanical torque : turbine electrical torque : rotational inertia 1 (3) Figure 3. Power coefficient curve.

5 732 The mechanical output torque depends on the turbine output mechanical power and turbine rotational speed. It can be calculated as follows: (4) where is the turbine mechanical power and is the turbine rotational speed. The electrical torque is related to the PMSM stator current by (5) where K I is the machine torque constant. In this system, the electrical torque is controlled by controlling the buck output current I L rather than the machine stator current I s. Hence, the electrical torque can be related to the buck current via a new defined constant K T (6) Equations (1) to (6) represent the model for the wind turbine system and combined together to form the block diagram model shown in Figure Speed control of wind turbine Two methods for controlling the speed of the wind turbine have been considered namely; stored power curve and PI control of the λ. Both methods are described below: a) Stored Power curve The relationship between C p and is a non-linear curve shown in Figure 3. The maimum output power of the wind turbine considered in this paper is obtained when λ = 1.3 which corresponds to C p =.25. In order to etract maimum possible power at a given wind speed condition, the wind turbine speed needs to vary so the tip speed ratio λ is always 1.3. Substituting (2) in (1) and using the above values for C p and gives the maimum power (7) Equation (7) defines the relationship between maimum power that can be etracted versus turbine speed. The optimised stored power curve has been plotted for turbine speed varying from to 2 RPM as shown in Figure 5. This curve can be used to control the speed of the wind turbine without the need to measure the wind speed. That can be done by creating a lookup table that produces a particular power demand for a particular turbine speed. This controller is as shown in Figure 6.

6 733 b) PI Control of the λ The second control method considered in this paper is PI method. This method is shown in Figure 7. The turbine speed and the wind speed are measured and λ is calculated using (2). The calculated λ is then compared with the optimal λ* which is 1.3 in this case. The error signal is fed into a PI controller that sets the current demand for the inner loop controller of the buck current. Ta 1 a J Tdt I L Figure 4. Block diagram of the system model. Figure 5. Stored power curve. ω u R ^3 λ u 3 C p.5ρπr 2 P m T m + T e ω ω P * 1/V dc I L * k T Stored Power Curve Figure 6. Stored power curve control.

7 734 ω u R λ ^3 u 3 C p.5ρπr 2 P m T m + T e 1 Tdt a J ω + λ* PI I L * k T PI Control of λ Figure 7. PI control of λ. 3. Results and Discussion 3.1. Simulation results of the simplified model Figures 6 and 7 use a simplified model of the system in which the buck demand current (the output from the stored power curve and PI controllers) is directly proportional to the electrical torque T e. In this simplified model, the electric system including the PMSM, the rectifier, the DC/DC buck converter are all linearized and represented by the torque coefficient K I. The two models represented in Figures 6 and 7 were built in Matlab/Simulink. Weather data were measured on the roof of the Environmental Sustainable Institute (ESI) in the University of Eeter-Penryn Campus. The measurements were taken using MetPak Pro (Gill Instruments). It is a multi-sensor instrument that can be used to measure essential weather data such as wind speed, wind direction, temperature, pressure, humidity, etc. Wind speed is measured every second at ESI and a sample of measurement for 7/4/214 is shown in Figure 8. It was used as an input to the wind turbine model. Table 1 below shows the system parameters used in the simulation. Table 1. Values used in the simplified model simulations. Symbol Description Value Rotational inertia 38 kg.m 2 R Turbine rotor radius 1m V dc DC voltage source in buck converter 5V P c1 Wind speed controller - Proportional Parameter (for results in Figure 1 below) 15 I c1 P c2 I c2 Wind speed controller - Integral Parameter (for results in Figure 1 below) Wind speed controller - Proportional Parameter (for results in Figure 11 below) Wind speed controller - Integral Parameter (for results in Figure 11 below) Figure 9 shows the electrical and mechanical powers along with wind turbine speed for the stored power curve control method. As can been seen, the electrical power curve is having a smooth

8 735 follow up of the mechanical power curve in corresponding to changes in wind speed. The generated electrical energy was kj. The stored power curve control method is very simple and straightforward way of control of power with no complication at all Wind speed (m/s)15 Time (s) Figure 8. Measured wind speed at ESI. 8 Power (W) Mechanical Power Electrical Power Turbine speed (m/s) Time (s) Figure 9. Power & speed for stored power curve case. For the PI control method, the Simulink PI control block was used and the values of the controller parameters; Proportional (P) and Integral (I) were changed to have different electrical power and torque responses. In other words, by changing those parameters, different values of electrical power and torque can be obtained. The PI method provides more controllability in comparison to the stored power curve control method, but it requires an anemometer to measure the wind speed. Figure 1 shows the electrical and mechanical powers along with wind turbine speed for the PI control method with PI parameters values of P c1 and I c1 as shown in Table 1. By changing the parameters to the values of P c2 and I c2 of Table 1, the maimum generated electrical energy was obtained. It was equal to 3.39 kj for the PI control method against kj for the stored power curve control. However, the maimum generated electrical energy in the case of PI control of λ was obtained at the epenses of

9 736 more fluctuations in the generated power and turbine speed as can be seen in Figure 11. The turbine speed is changing a lot which is not good for the machine. 8 6 Mechanical Power Electrical Power Power (W) Turbine speed (m/s) Time (s) Figure 1. Power & speed for PI control of λ case. Power (W) Mechanical Power Electrical Power Turbine speed (m/s) Time (s) Figure 11. Maimum power & speed for PI control of λ case Simulation results of the detailed model A detailed model of the system was built in Matlab/Simulink using SimPowerSystem toolbo as shown in Figure 12. The wind turbine block includes equations (1) and (2). The mechanical torque is fed into the PMSM. The three-phase output of the PMSM is connected to a passive rectifier. The PI control method is used. The rectified voltage is connected to a DC/DC buck converter. The measured

10 737 λ (TSR) value by equation (2) in the wind turbine block is fed to the wind speed control block and then compared with the optimal λ * (TSR*), which is 1.3 in this case. The error signal is fed into a PI controller, with P c3 and I c3 values as shown in Table 2, which sets the current demand for the buck current of the buck converter. The simulation parameters used are shown in Table 2. The same wind speed data shown in Figure 8 is used. Table 2. Values used in the detailed model simulations. Symbol Description Value Rotational inertia 38 kg.m 2 R Turbine rotor radius 1m R s Machine stator phase resistance.425ω L a Machine armature inductance.835 H K I Machine torque constant 5.38 P Machine pole pairs 5 V dc DC voltage source in buck converter 5V L Inductor in buck converter 5μH C Capacitor in buck converter 3 μf P c3 Wind speed controller - Proportional Parameter 15 I c3 Wind speed controller - Integral Parameter 2.5 Electrical power, mechanical power and turbine speed results are shown in Figure 13. The generated electrical energy is 32.5 kj. It is slightly higher than the obtained values with simplified models in both speed control types (stored power curve and PI control of the λ) and the result looks better where the electrical power curve is almost following the mechanical power curve. The turbine s speed has very little fluctuations and almost constant once it reached its peak value. Figure 12. Detailed model.

11 Mechanical Power Electrical Power Power (W) Turbine Speed (m/s) Time (s) Figure 13. Power & speed for detailed model. 4. Conclusion The paper presents a comparison between two methods of controlling the speed of a wind turbine in a microgird namely; PI control of the tip speed ratio and stored power curve. The PI method provides more controllability, but it requires an anemometer to measure the wind speed. The stored energy method, however, is easier to implement, but the amount of energy etracted can be less. Acknowledgments The work is financially supported by the Government of Oman, which provides a PhD grant for Rashid Al Badwawi. Also, financial support from EPSRC-DST funded RESCUES project (EP/K3619X/1). Conflict of Interest All authors declare no conflicts of interest in this paper. References 1. Chen Z, Guerrero JM, Blaabjerg F (29) A review of the state of the art of power electronics for wind turbines. IEEE T Power Electr 24: Valenciaga F, Puleston PF (28) High-order sliding control for a wind energy conversion system based on a permanent magnet synchronous generator. IEEE T Energy Conver 23:

12 Kenji A, Yukichi T, Takahisa O, et al. (22) A maimum power control of wind generator system using a permanent magnet synchronous generator and a boost chopper circuit. IEEE Power Conversion Conference 3: Dali M, Belhadj J, Roboam X (21) Hybrid solar-wind system with battery storage operating in grid-connected and standalone mode. Control and energy management Eperimental investigation. Energy 35: Ahmed AA, Ran L, Bumby J (28) Simulation and control of a hybrid PV-wind system. 4 th IET International Conference on Power Electronics, Machines and Drives PEMD 3: Sechilariu M, Wang BC, Locment F (214) Supervision control for optimal energy cost management in DC microgrid. Design and simulation. Int J Electr Power Energy Syst 58: Resende FO, Lopes JAP (211) Management and control systems for large scale integration of renewable energy sources into the electrical networks. IEEE International Conference on Computer as a Tool (EUROCON): AlBadwawi R, Abusara M, Mallick T (215) A Review of Hybrid Solar PV and Wind Energy System. J Smart Sci 3: Rashid Al Badwawi, et al., licensee AIMS Press. This is an open access article distributed under the terms of the Creative Commons Attribution License (

Hybrid Power System with A Two-Input Power Converter

Hybrid Power System with A Two-Input Power Converter Hybrid Power System with A Two-Input Power Converter Y. L. Juan and H. Y. Yang Department of Electrical Engineering National Changhua University of Education Jin-De Campus, Address: No.1, Jin-De Road,

More information

Renewable Energy Applications: Photovoltaic and Wind Energy Conversion Systems (WECS)

Renewable Energy Applications: Photovoltaic and Wind Energy Conversion Systems (WECS) Renewable Energy Applications: Photovoltaic and Wind Energy Conversion Systems (WECS) Josep Pou Antoni Arias Page 1 Outline 1. Renewable Energy Perspectives 2. Solar Photovoltaic (PV) 3. Wind Generation

More information

Coordination Control of a Hybrid AC/DC Microgrid With Various Renewable Energy Sources

Coordination Control of a Hybrid AC/DC Microgrid With Various Renewable Energy Sources Coordination Control of a Hybrid AC/DC Microgrid With Various Renewable Energy Sources 1 Hema Surya Teja Beram, 2 Nandigam Rama Narayana 1,2 Dept. of EEE, Sir C R Reddy College of Engineering, Eluru, AP,

More information

Modeling Grid Connection for Solar and Wind Energy

Modeling Grid Connection for Solar and Wind Energy 1 Modeling Grid Connection for Solar and Wind Energy P. J. van Duijsen, Simulation Research, The Netherlands Frank Chen, Pitotech, Taiwan Abstract Modeling of grid connected converters for solar and wind

More information

Analysis and Design of Multi Input Dc Dc Converter for Integrated Wind PV Cell Renewable Energy Generated System

Analysis and Design of Multi Input Dc Dc Converter for Integrated Wind PV Cell Renewable Energy Generated System International Journal of Recent Technology and Engineering (IJRTE) ISSN: 2277-3878, Volume-1, Issue-5, November 2012 Analysis and Design of Multi Input Dc Dc Converter for Integrated Wind PV Cell Renewable

More information

MULTI-INPUT DC-DC CONVERTER FOR RENEWABLE ENERGY SOURCES

MULTI-INPUT DC-DC CONVERTER FOR RENEWABLE ENERGY SOURCES MULTI-INPUT DC-DC CONVERTER FOR RENEWABLE ENERGY SOURCES Nithya.k 1, Ramasamy.M 2 1 PG Scholar, Department of Electrical and Electronics Engineering, K.S.R College of Engineering, Tamil Nadu, India 2 Assistant

More information

Transient analysis of integrated solar/diesel hybrid power system using MATLAB Simulink

Transient analysis of integrated solar/diesel hybrid power system using MATLAB Simulink Transient analysis of integrated solar/diesel hybrid power system using ATLAB Simulink Takyin Taky Chan School of Electrical Engineering Victoria University PO Box 14428 C, elbourne 81, Australia. Taky.Chan@vu.edu.au

More information

Distributed Renewable Energy Sources Integration and Smart Grid Control

Distributed Renewable Energy Sources Integration and Smart Grid Control Distributed Renewable Energy Sources Integration and Smart Grid Control Jianwu Zeng Power and Energy Systems Laboratory Department of Electrical & Computer Engineering University of Nebraska-Lincoln URL:

More information

Smart Grid and Renewable Energy Grid Integration. Jian Sun, Professor and Director Department of ECSE & Center for Future Energy Systems

Smart Grid and Renewable Energy Grid Integration. Jian Sun, Professor and Director Department of ECSE & Center for Future Energy Systems Smart Grid and Renewable Energy Grid Integration Jian Sun, Professor and Director Department of ECSE & Center for Future Energy Systems 1 How Smart Can We Make This Grid? 2 Smart Grid Drivers Need to Use

More information

High Intensify Interleaved Converter for Renewable Energy Resources

High Intensify Interleaved Converter for Renewable Energy Resources High Intensify Interleaved Converter for Renewable Energy Resources K. Muthiah 1, S.Manivel 2, Gowthaman.N 3 1 PG Scholar, Jay Shriram Group of Institutions,Tirupur 2 Assistant Professor, Jay Shriram Group

More information

2. A conductor of length 2m moves at 4m/s at 30 to a uniform magnetic field of 0.1T. Which one of the following gives the e.m.f. generated?

2. A conductor of length 2m moves at 4m/s at 30 to a uniform magnetic field of 0.1T. Which one of the following gives the e.m.f. generated? Extra Questions - 2 1. A straight length of wire moves through a uniform magnetic field. The e.m.f. produced across the ends of the wire will be maximum if it moves: a) along the lines of magnetic flux

More information

An Isolated Multiport DC-DC Converter for Different Renewable Energy Sources

An Isolated Multiport DC-DC Converter for Different Renewable Energy Sources An Isolated Multiport DC-DC Converter for Different Renewable Energy Sources K.Pradeepkumar 1, J.Sudesh Johny 2 PG Student [Power Electronics & Drives], Dept. of EEE, Sri Ramakrishna Engineering College,

More information

WIND TURBINE TECHNOLOGY

WIND TURBINE TECHNOLOGY Module 2.2-2 WIND TURBINE TECHNOLOGY Electrical System Gerhard J. Gerdes Workshop on Renewable Energies November 14-25, 2005 Nadi, Republic of the Fiji Islands Contents Module 2.2 Types of generator systems

More information

SYNCHRONOUS MACHINES

SYNCHRONOUS MACHINES SYNCHRONOUS MACHINES The geometry of a synchronous machine is quite similar to that of the induction machine. The stator core and windings of a three-phase synchronous machine are practically identical

More information

Integration and Distribution of Renewable Sources in DC Micro Grid With Energy Storage System

Integration and Distribution of Renewable Sources in DC Micro Grid With Energy Storage System ISSN (Online) : 2319-8753 ISSN (Print) : 2347-6710 International Journal of Innovative Research in Science, Engineering and Technology Volume 3, Special Issue 3, March 2014 2014 International Conference

More information

Control Strategies of the Doubly Fed Induction Machine for Wind Energy Generation Applications

Control Strategies of the Doubly Fed Induction Machine for Wind Energy Generation Applications Control Strategies of the Doubly Fed Induction Machine for Wind Energy Generation Applications AUTHORS Dr. Gonzalo Abad, The University of Mondragon, SPAIN. Dr. Miguel Ángel Rodríguez, Ingeteam Transmission

More information

Student Pulse Academic Journal

Student Pulse Academic Journal June 11 Student Pulse Academic Journal Implementation and control of Multi Input Power Converter for Grid Connected Hybrid Renewable Energy Generation System Yuvaraj V, Roger Rozario, S.N. Deepa yuvatheking@skygroups.org;

More information

Power Electronics. Prof. K. Gopakumar. Centre for Electronics Design and Technology. Indian Institute of Science, Bangalore.

Power Electronics. Prof. K. Gopakumar. Centre for Electronics Design and Technology. Indian Institute of Science, Bangalore. Power Electronics Prof. K. Gopakumar Centre for Electronics Design and Technology Indian Institute of Science, Bangalore Lecture - 1 Electric Drive Today, we will start with the topic on industrial drive

More information

Speed Control Methods of Various Types of Speed Control Motors. Kazuya SHIRAHATA

Speed Control Methods of Various Types of Speed Control Motors. Kazuya SHIRAHATA Speed Control Methods of Various Types of Speed Control Motors Kazuya SHIRAHATA Oriental Motor Co., Ltd. offers a wide variety of speed control motors. Our speed control motor packages include the motor,

More information

Grid Interconnection of Renewable Energy Sources Using Modified One-Cycle Control Technique

Grid Interconnection of Renewable Energy Sources Using Modified One-Cycle Control Technique Grid Interconnection of Renewable Energy Sources Using Modified One-Cycle Control Technique NKV.Sai Sunil 1, K.Vinod Kumar 2 PG Student, GITAM University, Visakhapatnam, India. Asst.Professor, Department

More information

Modeling and Control for Smart Grid Integration with MPPT of Solar/Wind Energy Conversion System S. Sathish Kumar 1, B.Swapna 2, Dr.C.

Modeling and Control for Smart Grid Integration with MPPT of Solar/Wind Energy Conversion System S. Sathish Kumar 1, B.Swapna 2, Dr.C. Modeling and Control for Smart Grid Integration with MPPT of Solar/Wind Energy Conversion System S. Sathish Kumar 1, B.Swapna 2, Dr.C.Nagarajan 3 Research Scholar, GRT Institute of Engineering & Technology,

More information

Parametric variation analysis of CUK converter for constant voltage applications

Parametric variation analysis of CUK converter for constant voltage applications ISSN (Print) : 232 3765 (An ISO 3297: 27 Certified Organization) Vol. 3, Issue 2, February 214 Parametric variation analysis of CUK converter for constant voltage applications Rheesabh Dwivedi 1, Vinay

More information

DC Voltage Regulation by Buck Converter Applicable for Stand Alone Micro Hydro Power Generation

DC Voltage Regulation by Buck Converter Applicable for Stand Alone Micro Hydro Power Generation International Journal of Electronic and Electrical Engineering. ISSN 0974-2174, Volume 7, Number 1 (2014), pp. 37-42 International Research Publication House http://www.irphouse.com DC Voltage Regulation

More information

Advance Electronic Load Controller for Micro Hydro Power Plant

Advance Electronic Load Controller for Micro Hydro Power Plant Journal of Energy and Power Engineering 8 (2014) 1802-1810 D DAVID PUBLISHING Advance Electronic Load Controller for Micro Hydro Power Plant Dipesh Shrestha, Ankit Babu Rajbanshi, Kushal Shrestha and Indraman

More information

DHANALAKSHMI COLLEGE OF ENGINEERING DEPARTMENT OF ELECTRICAL AND ELECTRONICS ENGINEERING EE2302 - ELECTRICAL MACHINES II UNIT-I SYNCHRONOUS GENERATOR

DHANALAKSHMI COLLEGE OF ENGINEERING DEPARTMENT OF ELECTRICAL AND ELECTRONICS ENGINEERING EE2302 - ELECTRICAL MACHINES II UNIT-I SYNCHRONOUS GENERATOR 1 DHANALAKSHMI COLLEGE OF ENGINEERING DEPARTMENT OF ELECTRICAL AND ELECTRONICS ENGINEERING Constructional details Types of rotors EE2302 - ELECTRICAL MACHINES II UNIT-I SYNCHRONOUS GENERATOR PART A 1.

More information

Design of Four Input Buck-Boost DC-DC Converter for Renewable Energy Application

Design of Four Input Buck-Boost DC-DC Converter for Renewable Energy Application Design of Four Input Buck-Boost DC-DC Converter for Renewable Energy Application A.Thiyagarajan Assistant Professor, Department of Electrical and Electronics Engineering Karpagam Institute of Technology

More information

A new DC micro-grid system using renewable energy and electric vehicles for smart energy delivery

A new DC micro-grid system using renewable energy and electric vehicles for smart energy delivery Title A new DC micro-grid system using renewable energy and electric vehicles for smart energy delivery Author(s) Liu, C; Chau, KT; Diao, C; Zhong, J; Zhang, X; Gao, S; Wu, D Citation The 2010 IEEE Vehicle

More information

Synchronous motor. Type. Non-excited motors

Synchronous motor. Type. Non-excited motors Synchronous motor A synchronous electric motor is an AC motor in which the rotation rate of the shaft is synchronized with the frequency of the AC supply current; the rotation period is exactly equal to

More information

T.FRANCIS, D.NARASIMHARAO

T.FRANCIS, D.NARASIMHARAO Applications (IJERA) ISSN: 48-96 wwwijeracom ol, Issue 3, May-Jun 0, pp40-46 A Soft-Switching DC/DC Converter With High oltage Gain for Renewable Energy Application TFRANCIS M-Tech Scholar, Power electronics

More information

Mathematical Modeling and Dynamic Simulation of a Class of Drive Systems with Permanent Magnet Synchronous Motors

Mathematical Modeling and Dynamic Simulation of a Class of Drive Systems with Permanent Magnet Synchronous Motors Applied and Computational Mechanics 3 (2009) 331 338 Mathematical Modeling and Dynamic Simulation of a Class of Drive Systems with Permanent Magnet Synchronous Motors M. Mikhov a, a Faculty of Automatics,

More information

Renewable Energy Laboratory for Engineering Students

Renewable Energy Laboratory for Engineering Students dspace User Conference 2010 India Sept 24 th 10 Renewable Energy Laboratory for Engineering Students H.T Jadhav, S. D. Joshi Rajarambapu Institute Of Technology ABSTRACT Renewal Energy is now included

More information

Design, Analysis, and Implementation of Solar Power Optimizer for DC Distribution System

Design, Analysis, and Implementation of Solar Power Optimizer for DC Distribution System Design, Analysis, and Implementation of Solar Power Optimizer for DC Distribution System Thatipamula Venkatesh M.Tech, Power System Control and Automation, Department of Electrical & Electronics Engineering,

More information

Hybrid Wind-Fuel Cell Renewable Energy Utilization Scheme for Village Electricity

Hybrid Wind-Fuel Cell Renewable Energy Utilization Scheme for Village Electricity Proceedings of the 4 th International Middle East Power Systems Conference (MEPCON 0), Cairo University, Egypt, December 9-, 00, Paper ID 3. Hybrid Wind-Fuel Cell Renewable Energy Utilization Scheme for

More information

FREQUENCY CONTROLLED AC MOTOR DRIVE

FREQUENCY CONTROLLED AC MOTOR DRIVE FREQUENCY CONTROLLED AC MOTOR DRIVE 1.0 Features of Standard AC Motors The squirrel cage induction motor is the electrical motor motor type most widely used in industry. This leading position results mainly

More information

dspace DSP DS-1104 based State Observer Design for Position Control of DC Servo Motor

dspace DSP DS-1104 based State Observer Design for Position Control of DC Servo Motor dspace DSP DS-1104 based State Observer Design for Position Control of DC Servo Motor Jaswandi Sawant, Divyesh Ginoya Department of Instrumentation and control, College of Engineering, Pune. ABSTRACT This

More information

Principles of Adjustable Frequency Drives

Principles of Adjustable Frequency Drives What is an Adjustable Frequency Drive? An adjustable frequency drive is a system for controlling the speed of an AC motor by controlling the frequency of the power supplied to the motor. A basic adjustable

More information

8 Speed control of Induction Machines

8 Speed control of Induction Machines 8 Speed control of Induction Machines We have seen the speed torque characteristic of the machine. In the stable region of operation in the motoring mode, the curve is rather steep and goes from zero torque

More information

KINETIC ENERGY RECOVERY SYSTEM BY MEANS OF FLYWHEEL ENERGY STORAGE

KINETIC ENERGY RECOVERY SYSTEM BY MEANS OF FLYWHEEL ENERGY STORAGE ADVANCED ENGINEERING 3(2009)1, ISSN 1846-5900 KINETIC ENERGY RECOVERY SYSTEM BY MEANS OF FLYWHEEL ENERGY STORAGE Cibulka, J. Abstract: This paper deals with the design of Kinetic Energy Recovery Systems

More information

Solar Energy Conversion using MIAC. by Tharowat Mohamed Ali, May 2011

Solar Energy Conversion using MIAC. by Tharowat Mohamed Ali, May 2011 Solar Energy Conversion using MIAC by Tharowat Mohamed Ali, May 2011 Abstract This work introduces an approach to the design of a boost converter for a photovoltaic (PV) system using the MIAC. The converter

More information

Simulation of Electric Drives using the Machines Library and the SmartElectricDrives Library

Simulation of Electric Drives using the Machines Library and the SmartElectricDrives Library Simulation of Electric Drives using the Machines Library and the SmartElectricDrives Library J.V. Gragger, H. Giuliani, H. Kapeller, T. Bäuml arsenal research, Vienna 04.09.2006 1 Contents Chapter 1: The

More information

Motor Fundamentals. DC Motor

Motor Fundamentals. DC Motor Motor Fundamentals Before we can examine the function of a drive, we must understand the basic operation of the motor. It is used to convert the electrical energy, supplied by the controller, to mechanical

More information

Droop Control Forhybrid Micro grids With Wind Energy Source

Droop Control Forhybrid Micro grids With Wind Energy Source Droop Control Forhybrid Micro grids With Wind Energy Source [1] Dinesh Kesaboina [2] K.Vaisakh [1][2] Department of Electrical & Electronics Engineering Andhra University College of Engineering Visakhapatnam,

More information

Modeling and Simulation of a Novel Switched Reluctance Motor Drive System with Power Factor Improvement

Modeling and Simulation of a Novel Switched Reluctance Motor Drive System with Power Factor Improvement American Journal of Applied Sciences 3 (1): 1649-1654, 2006 ISSN 1546-9239 2006 Science Publications Modeling and Simulation of a Novel Switched Reluctance Motor Drive System with Power Factor Improvement

More information

A Stable DC Power Supply for Photovoltaic Systems

A Stable DC Power Supply for Photovoltaic Systems Int. J. of Thermal & Environmental Engineering Volume 12, No. 1 (216) 67-71 A Stable DC Power Supply for Photovoltaic Systems Hussain A. Attia*, Beza Negash Getu, and Nasser A. Hamad Department of Electrical,

More information

System configuration of v-f control with solar PV generator operating at MPPT with a battery storage System

System configuration of v-f control with solar PV generator operating at MPPT with a battery storage System ISSN: 2278 1323 All Rights Reserved 2015 IJARCET 4222 International Journal of Advanced Research in Computer Engineering & Technology (IJARCET) System configuration of v-f control with solar PV generator

More information

Analysis of PV cell fed High Voltage Gain Seven and Nine level inverter with Reduced Switches

Analysis of PV cell fed High Voltage Gain Seven and Nine level inverter with Reduced Switches Analysis of PV cell fed High Voltage Gain Seven and Nine level inverter with Reduced Switches Ch.Vedasri P.G. Scholar, Department of Electrical & Electronics Engineering, Chirala Engineering College, Chirala;

More information

Analysis of Space Vector Pulse Width Modulation VSI Induction Motor on various conditions

Analysis of Space Vector Pulse Width Modulation VSI Induction Motor on various conditions Analysis of Space Vector Pulse Width Modulation VSI Induction Motor on various conditions Padma Chaturvedi 1, Amarish Dubey 2 1 Department of Electrical Engineering, Maharana Pratap Engineering College,

More information

13 ELECTRIC MOTORS. 13.1 Basic Relations

13 ELECTRIC MOTORS. 13.1 Basic Relations 13 ELECTRIC MOTORS Modern underwater vehicles and surface vessels are making increased use of electrical actuators, for all range of tasks including weaponry, control surfaces, and main propulsion. This

More information

Dually Fed Permanent Magnet Synchronous Generator Condition Monitoring Using Stator Current

Dually Fed Permanent Magnet Synchronous Generator Condition Monitoring Using Stator Current Summary Dually Fed Permanent Magnet Synchronous Generator Condition Monitoring Using Stator Current Joachim Härsjö, Massimo Bongiorno and Ola Carlson Chalmers University of Technology Energi och Miljö,

More information

Solar Inverters. Ferrites in Renewable Energies: Solar Inverters. customer requirements. Support and flexibility to design custom product to fulfill

Solar Inverters. Ferrites in Renewable Energies: Solar Inverters. customer requirements. Support and flexibility to design custom product to fulfill Support and flexibility to design custom product to fulfill customer requirements Optimum ferrite material selection for magnetic applications in the design for cost saving, and performance improvement

More information

Principles and Working of DC and AC machines

Principles and Working of DC and AC machines BITS Pilani Dubai Campus Principles and Working of DC and AC machines Dr Jagadish Nayak Constructional features BITS Pilani Dubai Campus DC Generator A generator consists of a stationary portion called

More information

Development and deployment of a control system for energy storage

Development and deployment of a control system for energy storage Development and deployment of a control system for energy storage ABSTRACT C. Knight 1, V. Becerra 2, W. Holderbaum 2, R. Mayer 3 1 Technologies for Sustainable Built Environment Centre University of Reading,

More information

(a) (b) Index Terms Boost Converter, Diode Rectifier, Full Converters, Synchronous Generator, Voltage Disturbances, Wind Turbines. 26,6 19,9 15,2 11,5

(a) (b) Index Terms Boost Converter, Diode Rectifier, Full Converters, Synchronous Generator, Voltage Disturbances, Wind Turbines. 26,6 19,9 15,2 11,5 Abstract The development of many technologies has provided a fast growth in the wind power. In this context, the variable speed wind turbines are preferred because more power is extracted from the wind.

More information

Distribution Generation System

Distribution Generation System Analysis of Solar Power Optimizer for DC Distribution Generation System Srinivas Dobbala 1, K. Chandra Mouli 2 1 Student, Department of EEE, Vaageswari College of Engineering, Karimnagar, Telangana, India

More information

Simulation of VSI-Fed Variable Speed Drive Using PI-Fuzzy based SVM-DTC Technique

Simulation of VSI-Fed Variable Speed Drive Using PI-Fuzzy based SVM-DTC Technique Simulation of VSI-Fed Variable Speed Drive Using PI-Fuzzy based SVM-DTC Technique B.Hemanth Kumar 1, Dr.G.V.Marutheshwar 2 PG Student,EEE S.V. College of Engineering Tirupati Senior Professor,EEE dept.

More information

Energy Storage System for Dc Micro Grid Using PIC Microcontroller

Energy Storage System for Dc Micro Grid Using PIC Microcontroller Energy Storage System for Dc Micro Grid Using PIC Microcontroller Sanas Renuka V 1, Patil Anupama S 2 P.G. Student, Department of Electrical Engg, Dnyanganga College of Engineering & Research, Pune, India

More information

LEHI CITY POWER NET METERING STANDARDS For Customer-Owned Electric Generating Systems

LEHI CITY POWER NET METERING STANDARDS For Customer-Owned Electric Generating Systems LEHI CITY POWER NET METERING STANDARDS For Customer-Owned Electric Generating Systems A. General This Net Metering Standard for Customer-Owned Grid Connected Electric Generating Systems sets forth the

More information

Creating a Usable Power Supply from a Solar Panel

Creating a Usable Power Supply from a Solar Panel Creating a Usable Power Supply from a Solar Panel An exploration in DC- DC converters By Kathleen Ellis Advised by Dr. Derin Sherman Department of Physics, Cornell College November 21, 2012 Introduction

More information

Power Flow Control Using Bidirectional Dc/Dc Converter for Grid Connected Photovoltaic Power System

Power Flow Control Using Bidirectional Dc/Dc Converter for Grid Connected Photovoltaic Power System International Journal of Innovative Research in Electronics and Communications (IJIREC) Volume 1, Issue 8, November 2014, PP 13-24 ISSN 2349-4042 (Print) & ISSN 2349-4050 (Online) www.arcjournals.org Power

More information

How to Turn an AC Induction Motor Into a DC Motor (A Matter of Perspective) Steve Bowling Application Segments Engineer Microchip Technology, Inc.

How to Turn an AC Induction Motor Into a DC Motor (A Matter of Perspective) Steve Bowling Application Segments Engineer Microchip Technology, Inc. 1 How to Turn an AC Induction Motor Into a DC Motor (A Matter of Perspective) Steve Bowling Application Segments Engineer Microchip Technology, Inc. The territory of high-performance motor control has

More information

ATTACHMENT F. Electric Utility Contact Information Utility Name. For Office Use Only

ATTACHMENT F. Electric Utility Contact Information Utility Name. For Office Use Only ATTACHMENT F CATEGORY 2 GENERATOR INTERCONNECTION APPLICATION FOR ALL PROJECTS WITH AGGREGATE GENERATOR OUTPUT OF MORE THAN 20 KW BUT LESS THAN OR EQUAL TO 150 KW Also Serves as Application for Category

More information

Control of Distributed Generation Units in Stand-Alone Industrial Networks

Control of Distributed Generation Units in Stand-Alone Industrial Networks 2 nd International Conference on Electrical Systems Design & Technologies, Hammamet Tunisia, Nov. 8-10, 2008 Control of Distributed Generation Units in Stand-Alone Industrial Networks Ali Asghar Ghadimi

More information

Hybrid Systems Specialisation Syllabus

Hybrid Systems Specialisation Syllabus Hybrid Systems Specialisation Syllabus Contents: 1. Basics of electric power systems 2. Energy generation in isolated systems 3. Electric power systems 4. Economics and socio-economics -----------------------------------------------------------------------------------------------

More information

Joydeep Sarkar, Pramod Yade Dept. of Electrical Engineering, Sandip Institute of Engineering & Management, Nashik (MS) Joydeep.sarkar@siem.org.

Joydeep Sarkar, Pramod Yade Dept. of Electrical Engineering, Sandip Institute of Engineering & Management, Nashik (MS) Joydeep.sarkar@siem.org. IJESRT INTERNATIONAL JOURNAL OF ENGINEERING SCIENCES & RESEARCH TECHNOLOGY Structuring DC Micro-Grid for Integrating Renewable Energy in a DC Load Dominant Electrical Environment Joydeep Sarkar, Pramod

More information

Implementation of High Step-Up Solar Power Optimizer for DC Micro Grid Application

Implementation of High Step-Up Solar Power Optimizer for DC Micro Grid Application Implementation of High tepup olar Power Optimizer for C Micro Grid Application hihming Chen, KeRen Hu, TsorngJuu Liang, and YiHsun Hsieh Advanced Optoelectronic Technology Center epartment of Electrical

More information

SECTION 4 ELECTRIC MOTORS UNIT 17: TYPES OF ELECTRIC MOTORS

SECTION 4 ELECTRIC MOTORS UNIT 17: TYPES OF ELECTRIC MOTORS SECTION 4 ELECTRIC MOTORS UNIT 17: TYPES OF ELECTRIC MOTORS UNIT OBJECTIVES After studying this unit, the reader should be able to Describe the different types of open single-phase motors used to drive

More information

Control Development and Modeling for Flexible DC Grids in Modelica

Control Development and Modeling for Flexible DC Grids in Modelica Control Development and Modeling for Flexible DC Grids in Modelica Andreas Olenmark 1 Jens Sloth 2 Anna Johnsson 3 Carl Wilhelmsson 3 Jörgen Svensson 4 1 One Nordic AB, Sweden, andreas.olenmark@one-nordic.se.

More information

Keywords: synchronous generator, synchronous motor, automatic voltage regulator, V- curves, synchronizing power, hunting, excitation system

Keywords: synchronous generator, synchronous motor, automatic voltage regulator, V- curves, synchronizing power, hunting, excitation system SYNCHRONOUS MACHINES Tze-Fun Chan Hong Kong Polytechnic University, Hong Kong, China Keywords: synchronous generator, synchronous motor, automatic voltage regulator, V- curves, synchronizing power, hunting,

More information

Grid integration of renewable energy

Grid integration of renewable energy CRGM Online Training 2015 Online Training on Grid integration of renewable energy with exam: Outline Certified ReGrid Manager (CRGM) Page 1 of 10 1 What does ReGrid mean?... 2 2 Awarded certificates (Certified

More information

Design of Solar Power Optimizer And Eliminating Leakage Current In Multi-Level Inverter For PV Systems

Design of Solar Power Optimizer And Eliminating Leakage Current In Multi-Level Inverter For PV Systems Design of Solar Power Optimizer And Eliminating Leakage Current In Multi-Level Inverter For PV Systems A. Asaph 1, Dr. P. Selvan 2 1 PG Scholar, 2 Head of the Department, Erode Sengunthar Engineering College,

More information

AC Induction Motor Slip What It Is And How To Minimize It

AC Induction Motor Slip What It Is And How To Minimize It AC Induction Motor Slip What It Is And How To Minimize It Mauri Peltola, ABB Oy, Helsinki, Finland The alternating current (AC) induction motor is often referred to as the workhorse of the industry because

More information

Three-port DC-DC Converters to Interface Renewable Energy Sources with Bi-directional Load and Energy Storage Ports

Three-port DC-DC Converters to Interface Renewable Energy Sources with Bi-directional Load and Energy Storage Ports Three-port DC-DC Converters to Interface Renewable Energy Sources with Bi-directional Load and Energy Storage Ports A DISSERTATION SUBMITTED TO THE FACULTY OF THE GRADUATE SCHOOL OF THE UNIVERSITY OF MINNESOTA

More information

Lecture 4 Energy Conversion in Wind Turbine

Lecture 4 Energy Conversion in Wind Turbine Tuuli- ja aurinkovoimateknologia ja -liiketoiminta Wind and Solar Energy Technology and Business BL20A1200 Lecture 4 Energy Conversion in Wind Turbine LUT Energia, Olli Pyrhönen Equations for energy conversion

More information

SOLAR PV-WIND HYBRID POWER GENERATION SYSTEM

SOLAR PV-WIND HYBRID POWER GENERATION SYSTEM SOLAR PV-WIND HYBRID POWER GENERATION SYSTEM J.Godson 1,M.Karthick 2,T.Muthukrishnan 3,M.S.Sivagamasundari 4 Final year UG students, Department of EEE,V V College of Engineering,Tisaiyanvilai, Tirunelveli,

More information

Mathematical Modelling of PMSM Vector Control System Based on SVPWM with PI Controller Using MATLAB

Mathematical Modelling of PMSM Vector Control System Based on SVPWM with PI Controller Using MATLAB Mathematical Modelling of PMSM Vector Control System Based on SVPWM with PI Controller Using MATLAB Kiran Boby 1, Prof.Acy M Kottalil 2, N.P.Ananthamoorthy 3 Assistant professor, Dept of EEE, M.A College

More information

INTERFACES FOR RENEWABLE ENERGY SOURCES WITH ELECTRIC POWER SYSTEMS

INTERFACES FOR RENEWABLE ENERGY SOURCES WITH ELECTRIC POWER SYSTEMS INTERFACES FOR RENEWABLE ENERGY SOURCES WITH ELECTRIC POWER SYSTEMS Paulo Ferreira, Manuel Trindade, Júlio S. Martins and João L. Afonso University of Minho, Braga, Portugal paulo.alves.ferreira@sapo.pt,

More information

Power Electronics for Renewable Energy Integration into Hybrid AC/DC Microgrids Kai SUN Aug 27, 2015

Power Electronics for Renewable Energy Integration into Hybrid AC/DC Microgrids Kai SUN Aug 27, 2015 Power Electronics for Renewable Energy Integration into Hybrid AC/DC Microgrids Kai SUN Aug 27, 2015 厚 德 载 物 自 强 不 息 Dept. of Electrical Engineering Outlines Introduction Series-distributed Renewable Generation

More information

Available online at www.sciencedirect.com Available online at www.sciencedirect.com

Available online at www.sciencedirect.com Available online at www.sciencedirect.com Available online at www.sciencedirect.com Available online at www.sciencedirect.com Procedia Procedia Engineering Engineering () 9 () 6 Procedia Engineering www.elsevier.com/locate/procedia International

More information

ONR/NSF-Sponsored Faculty/Industry Workshop

ONR/NSF-Sponsored Faculty/Industry Workshop ONR/NSF-Sponsored Faculty/Industry Workshop Reforming Power-Related Curriculum Power Electronics Presenter: Hariharan Krishnaswami Assistant Professor University of Texas at San Antonio New Electric Power

More information

Solar and Wind Hybrid power generation system for Street lights at Highways

Solar and Wind Hybrid power generation system for Street lights at Highways Solar and Wind Hybrid power generation system for Street lights at Highways 1 S.Selvam 2 Edison Prabhu.K 3 Bharath Kumar M.R 4 Andrew Mathew Dominic 1 Assistant Professor, Nehru institute of Engineering

More information

A bidirectional DC-DC converter for renewable energy systems

A bidirectional DC-DC converter for renewable energy systems BULLETIN OF THE POLISH ACADEMY OF SCIENCES TECHNICAL SCIENCES Vol. 57, No. 4, 2009 A bidirectional DC-DC converter for renewable energy systems S. JALBRZYKOWSKI, and T. CITKO Faculty of Electrical Engineering,

More information

LOSSELESS STARTING METHOD FOR THE WOUND ROTOR INDUCTION MOTOR

LOSSELESS STARTING METHOD FOR THE WOUND ROTOR INDUCTION MOTOR LOSSELESS STARTING METHOD FOR THE WOUND ROTOR INDUCTION MOTOR Sergiu Ivanov Mihai Rdulescu University of Craiova, Romania INDA Craiova Faculty of Electrical Engineering 30, Mr#e#ti Street 107, Decebal

More information

C Standard AC Motors

C Standard AC Motors C Standard AC Standard AC C-1 Overview, Product Series... C-2 Constant... C-9 C-21 C-113 Reversible C-147 Overview, Product Series Constant Reversible Electromagnetic Brake C-155 Electromagnetic Brake

More information

NO LOAD & BLOCK ROTOR TEST ON THREE PHASE INDUCTION MOTOR

NO LOAD & BLOCK ROTOR TEST ON THREE PHASE INDUCTION MOTOR INDEX NO. : M-142 TECHNICAL MANUAL FOR NO LOAD & BLOCK ROTOR TEST ON THREE PHASE INDUCTION MOTOR Manufactured by : PREMIER TRADING CORPORATION (An ISO 9001:2000 Certified Company) 212/1, Mansarover Civil

More information

Design of Battery Energy Storage System for Generation of Solar Power

Design of Battery Energy Storage System for Generation of Solar Power Design of Battery Energy Storage System for Generation of Solar Power 1 Debasreeta Mohanty 2 Saswati Dash 3 Mrs. Shobha Agarwal PG Scholar, PG Scholar, Assistant professor School of Electrical Engineering,

More information

Development of High Frequency Link Direct DC to AC Converters for Solid Oxide Fuel Cells (SOFC)

Development of High Frequency Link Direct DC to AC Converters for Solid Oxide Fuel Cells (SOFC) Development of High Frequency Link Direct DC to AC Converters for Solid Oxide Fuel Cells (SOFC) Dr. Prasad Enjeti Power Electronics Laboratory Department of Electrical Engineering College Station, TX -

More information

2 Topology and Control Schemes

2 Topology and Control Schemes AC Motor Drive Fed by Renewable Energy Sources with PWM J. Pavalam 1 ; R. Ramesh Kumar 2 ; R. Mohanraj 3 ; K. Umadevi 4 1 PG Scholar, M.E-Power electronics and Drives Excel College of Engineering and Technology

More information

Modeling of Multi-Input DC-DC Converter for Renewable Energy Sources

Modeling of Multi-Input DC-DC Converter for Renewable Energy Sources Modeling of Multi-Input DC-DC Converter for Renewable Energy Sources Nithya. K 1, M. Ramasamy 2 PG Scholar, Department of EEE, K.S.R College of Engineering, Tiruchengode, Tamilnadu, India 1 Assistant Professor,

More information

Time Response Analysis of DC Motor using Armature Control Method and Its Performance Improvement using PID Controller

Time Response Analysis of DC Motor using Armature Control Method and Its Performance Improvement using PID Controller Available online www.ejaet.com European Journal of Advances in Engineering and Technology, 5, (6): 56-6 Research Article ISSN: 394-658X Time Response Analysis of DC Motor using Armature Control Method

More information

Modelling, Simulation and Performance Analysis of A Variable Frequency Drive in Speed Control Of Induction Motor

Modelling, Simulation and Performance Analysis of A Variable Frequency Drive in Speed Control Of Induction Motor International Journal of Engineering Inventions e-issn: 78-7461, p-issn: 319-6491 Volume 3, Issue 5 (December 013) PP: 36-41 Modelling, Simulation and Performance Analysis of A Variable Frequency Drive

More information

MATHEMATICAL MODELING OF BLDC MOTOR WITH CLOSED LOOP SPEED CONTROL USING PID CONTROLLER UNDER VARIOUS LOADING CONDITIONS

MATHEMATICAL MODELING OF BLDC MOTOR WITH CLOSED LOOP SPEED CONTROL USING PID CONTROLLER UNDER VARIOUS LOADING CONDITIONS VOL. 7, NO., OCTOBER ISSN 89-668 6- Asian Research Publishing Network (ARPN). All rights reserved. MATHEMATICAL MODELING OF BLDC MOTOR WITH CLOSED LOOP SPEED CONTROL USING PID CONTROLLER UNDER VARIOUS

More information

SIMULATION AND POWER FLOW CONTROL OF WIND-DIESEL HYBRID POWER GENERATION SYSTEM

SIMULATION AND POWER FLOW CONTROL OF WIND-DIESEL HYBRID POWER GENERATION SYSTEM Technology, 14(3), 87-93, (2011) TECHNOLOGY SIMULATION AND POWER FLOW CONTROL OF WIND-DIESEL HYBRID POWER GENERATION SYSTEM Yuksel OGUZ *, Secil VARBAK NESE **, Mehmet YUMURTACI * * Afyon Kocatepe University,

More information

APPLICATION NOTE TESTING PV MICRO INVERTERS USING A FOUR QUADRANT CAPABLE PROGRAMMABLE AC POWER SOURCE FOR GRID SIMULATION. Abstract.

APPLICATION NOTE TESTING PV MICRO INVERTERS USING A FOUR QUADRANT CAPABLE PROGRAMMABLE AC POWER SOURCE FOR GRID SIMULATION. Abstract. TESTING PV MICRO INVERTERS USING A FOUR QUADRANT CAPABLE PROGRAMMABLE AC POWER SOURCE FOR GRID SIMULATION Abstract This application note describes the four quadrant mode of operation of a linear AC Power

More information

Power Electronic Circuits

Power Electronic Circuits Power Electronic Circuits Assoc. Prof. Dr. H. İbrahim OKUMUŞ Karadeniz Technical University Engineering Faculty Department of Electrical And Electronics 1 DC to DC CONVERTER (CHOPPER) General Buck converter

More information

Renewable Energy Sources Based Permanent Magnet Brushless DC Motor Drive

Renewable Energy Sources Based Permanent Magnet Brushless DC Motor Drive IJIRST International Journal for Innovative Research in Science & Technology Volume 1 Issue 6 November 2014 ISSN (online): 2349-6010 Renewable Energy Sources Based Permanent Magnet Brushless DC Motor Drive

More information

What Is Regeneration?

What Is Regeneration? What Is Regeneration? Braking / Regeneration Manual Regeneration Overview Revision 1.0 When the rotor of an induction motor turns slower than the speed set by the applied frequency, the motor is transforming

More information

HIGH FREQUENCY TRANSFORMER WITH TRANSFORMER SWITCHOVER

HIGH FREQUENCY TRANSFORMER WITH TRANSFORMER SWITCHOVER OPTIMUM EFFICIENCY AND FLEXIBLE USE HIGH FREQUENCY TRANSFORMER WITH TRANSFORMER SWITCHOVER One of the many requirements of the modern inverter is a broad, coordinated input and MPP voltage range with a

More information

Design and Simulation of Soft Switched Converter Fed DC Servo Drive

Design and Simulation of Soft Switched Converter Fed DC Servo Drive International Journal of Soft Computing and Engineering (IJSCE) ISSN: 2231-237, Volume-1, Issue-5, November 211 Design and Simulation of Soft Switched Converter Fed DC Servo Drive Bal Mukund Sharma, A.

More information

ISPS2014 Workshop Energy to Smart Grids Presenting results of ENIAC project: E2SG (Energy to Smart Grid)

ISPS2014 Workshop Energy to Smart Grids Presenting results of ENIAC project: E2SG (Energy to Smart Grid) ISPS2014 Workshop Energy to Smart Grids Presenting results of ENIAC project: E2SG (Energy to Smart Grid) Bidirectional isolating AC/DC converter for coupling DC grids with the AC mains based on a modular

More information

Energy Systems Integration

Energy Systems Integration Energy Systems Integration Dr. Martha Symko-Davies Director of Partnerships, ESI March 2015 NREL is a national laboratory of the U.S. Department of Energy, Office of Energy Efficiency and Renewable Energy,

More information